Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser
Flatness and smoothness of optical components are crucial to maintain the uniformity of light distribution. However, to treat a very delicate surface require, a controllable and gentle technique. This can be achieved by using ultraviolet laser as a micromaching. In this case, an argon fluoride excim...
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my.utm.85642013-06-28T03:43:49Z http://eprints.utm.my/id/eprint/8564/ Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser Bidin, Noriah Zarzali Shah, Aishah Mat Daud, Yaacob QC Physics Flatness and smoothness of optical components are crucial to maintain the uniformity of light distribution. However, to treat a very delicate surface require, a controllable and gentle technique. This can be achieved by using ultraviolet laser as a micromaching. In this case, an argon fluoride excimer laser was employed as a source of ablation. Polymethylmethacrylate (PMMA) film is coated on a Perspex substrate. Fabry-Perot interferometer was incorporated as a dynamic transducer to monitor the surface treatment. The Hybrid plastic-polymer was then ablated by series pulses of UV excimer laser. The pulses are controlled until the appearance of straight and equidistance line fringes. The degree of flatness achieved by using this laser surface treatment is ?/10. Faculty of Science 2008 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/8564/1/NoriahBidin2008_SurfaceTreatmentOnPolymethylmethacrylateHybrid.pdf Bidin, Noriah and Zarzali Shah, Aishah and Mat Daud, Yaacob (2008) Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser. Jurnal Fizik UTM, 3 . pp. 8-13. ISSN 0128-8644 |
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QC Physics Bidin, Noriah Zarzali Shah, Aishah Mat Daud, Yaacob Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser |
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Flatness and smoothness of optical components are crucial to maintain the uniformity of light distribution. However, to treat a very delicate surface require, a controllable and gentle technique. This can be achieved by using ultraviolet laser as a micromaching. In this case, an argon fluoride excimer laser was employed as a source of ablation. Polymethylmethacrylate (PMMA) film is coated on a Perspex substrate. Fabry-Perot interferometer was incorporated as a dynamic transducer to monitor the surface treatment. The Hybrid plastic-polymer was then ablated by series pulses of UV excimer laser. The pulses are controlled until the appearance of straight and equidistance line fringes. The degree of flatness achieved by using this laser surface treatment is ?/10. |
format |
Article |
author |
Bidin, Noriah Zarzali Shah, Aishah Mat Daud, Yaacob |
author_facet |
Bidin, Noriah Zarzali Shah, Aishah Mat Daud, Yaacob |
author_sort |
Bidin, Noriah |
title |
Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser
|
title_short |
Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser
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title_full |
Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser
|
title_fullStr |
Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser
|
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Surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser
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title_sort |
surface treatment on polymethylmethacrylate hybrid using argon flouride excimer laser |
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Faculty of Science |
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2008 |
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http://eprints.utm.my/id/eprint/8564/1/NoriahBidin2008_SurfaceTreatmentOnPolymethylmethacrylateHybrid.pdf http://eprints.utm.my/id/eprint/8564/ |
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